The paper investigates strike-slip fault rupture propagation through dense sand and its interaction with surface foundations, employing 3D finite element (FE) modelling. Two soil constitutive models (implemented in Abaqus through user subroutines) are employed for this purpose: (i) a recently developed simple yet efficient model with a Mohr–Coulomb yield criterion, which incorporates post-yield isotropic frictional hardening and softening (MC–HS model); and (ii) the basic version of the more sophisticated hypoplastic model for sand. Both models are calibrated on the basis of monotonic triaxial compression tests (and an additional oedometer test for the hypoplastic model), conducted as part of this study. The numerical predictions are compar...
International audienceThe initiation and the initial evolution of a strike-slip fault are modeled wi...
AbstractThe initiation and the initial evolution of a strike-slip fault are modeled within an elasto...
Ullah, S ORCiD: 0000-0002-5522-53413D finite element simulations are conducted to better understand ...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
This paper presents results from numerical simulations of the propagation of an active dip-slip faul...
3D finite element simulations are conducted to better understand the soil-structure interaction of r...
Summarization: The increasing urban development in seismic-prone regions, in conjunction with the co...
International audienceThe initiation and the initial evolution of a strike-slip fault are modeled wi...
International audienceThe initiation and the initial evolution of a strike-slip fault are modeled wi...
AbstractThe initiation and the initial evolution of a strike-slip fault are modeled within an elasto...
Ullah, S ORCiD: 0000-0002-5522-53413D finite element simulations are conducted to better understand ...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
Field evidence from recent earthquakes has shown that structures can be designed to survive major su...
This paper presents results from numerical simulations of the propagation of an active dip-slip faul...
3D finite element simulations are conducted to better understand the soil-structure interaction of r...
Summarization: The increasing urban development in seismic-prone regions, in conjunction with the co...
International audienceThe initiation and the initial evolution of a strike-slip fault are modeled wi...
International audienceThe initiation and the initial evolution of a strike-slip fault are modeled wi...
AbstractThe initiation and the initial evolution of a strike-slip fault are modeled within an elasto...
Ullah, S ORCiD: 0000-0002-5522-53413D finite element simulations are conducted to better understand ...